Automated Creep/Stress Rupture Testing for WinCCS
Applied Test Systems unveiled an innovative solution for Creep and Stress Rupture testing known a……...
The PolyBLOCK 8 is a highly versatile, compact 8-reactor, automated parallel synthesis platform, perfect for use in general chemical synthesis within the R&D and process development fields, whilst also proving effective for more bespoke applications, such as long-term stability studies. The 8independently controlled reaction zones make the PolyBLOCK 8 especially well-suited for DoE campaigns and the platform’s modular design enables its capabilities to be easily expanded and adapted
Application modules that can be added include:
It supports reactor volumes of up to 150 ml, and is equipped with adaptors to support a range of reactor types and sizes. Additional functionality modules include:
The system is also available in a high-pressure variant.
Ambient to 250 ⁰C (without external cooling)
Options to decrease the range down to-40 ⁰C(circulator dependent)
Separate mantle around each reactor allows the temperature to be controlled individually, with arange/difference of over 50 °C between the reactors
Indirect agitation with magnetic stirrer bar as standard.
labCONSOL software control enables regular data logging, multi-step recipes, parameter control, and feedback loops. The software adds a responsive intelligence to the PolyBLOCK 4 system and still delivers an intuitive interface that needs only minimal training to run quickly.
Include automatic user-configurable reaction detection and shutdown procedures,to ensure user safety.
Automatic hardware and software fail-safes are installed on every system.
Also available reflux and inerting block, with adapters for vials, tubes, and reactors.
Vessel typesare available in Glass, Stainless Steel orHastelloy. With reactor volumes up to 150 ml.
High Pressure and Vacuum Systemsavailable, more details on our high-pressure system can be found via PolyBLOCK High Pressure.
Sampling Systemsthrough active pumps, manual dip tubes, automated level control, or multisampling units, like the ASU.
Reagent Additionthrough fully automated liquidand gas feeds as well as volumetric syringe pumps. These solutions can be applied to both high and low-pressure systems.
Control Optionsall relevant inputs can be logged, enabling automated monitoring and, where appropriate, feedback control of the reactor system.
Sensor Options
Temperature, pressure, pH, turbidity, conductivity.
Integration of third-party probes is possible, such as in-situ FTIR, particle sizing probes and Raman probes.
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